首页> 外文期刊>International Journal of Applied Mathematics and Computer Science >REDUCING THE MAST VIBRATION OF SINGLE-MAST STACKER CRANES BY GAIN-SCHEDULED CONTROL
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REDUCING THE MAST VIBRATION OF SINGLE-MAST STACKER CRANES BY GAIN-SCHEDULED CONTROL

机译:通过增益控制减少单桅双桨起重机的桅杆振动

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In the frame structure of stacker cranes harmful mast vibrations may appear due to the inertial forces of acceleration or the braking movement phase. This effect may reduce the stability and positioning accuracy of these machines. Unfortunately, their dynamic properties also vary with the lifted load magnitude and position. The purpose of the paper is to present a controller design method which can handle the effect of a varying lifted load magnitude and position in a dynamic model and at the same time reveals good reference signal tracking and mast vibration reducing properties. A controller design case study is presented step by step from dynamic modeling through to the validation of the resulting controller. In the paper the dynamic modeling possibilities of single-mast stacker cranes are summarized. The handling of varying dynamical behavior is realized via the polytopic LPV modeling approach. Based on this modeling technique, a gain-scheduled controller design method is proposed, which is suitable for achieving the goals set. Finally, controller validation is presented by means of time domain simulations.
机译:在堆垛起重机的框架结构中,由于加速的惯性力或制动运动阶段可能会出现有害的桅杆振动。这种效果可能会降低这些机器的稳定性和定位精度。不幸的是,它们的动态特性也随负载大小和位置的升高而变化。本文的目的是提出一种控制器设计方法,该方法可以处理动态模型中变化的提升载荷大小和位置的影响,同时展现出良好的参考信号跟踪和桅杆减振性能。从动态建模到最终控制器的验证,逐步介绍了控制器设计案例研究。本文总结了单桅吊式起重机的动态建模可能性。通过多主题LPV建模方法可以实现对各种动态行为的处理。在此建模技术的基础上,提出了一种适合目标设定的增益调度控制器设计方法。最后,通过时域仿真对控制器进行了验证。

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